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使用卡瓦列里估计器测定平均颗粒体积的蒙特卡罗模拟。

A Monte Carlo simulation of the determination of mean particle volume using the Cavalieri estimator.

作者信息

Hammel Ilan, Lagunoff David

机构信息

Department of Pathology, Sackler School of Medicine, Tel-Aviv University, Tel Aviv, Israel.

出版信息

Cytometry. 2002 Feb 1;47(2):138-41. doi: 10.1002/cyto.10054.

Abstract

BACKGROUND

A common morphometric problem is the determination of an estimate of the size of biological particles obtained from measurements made on a sample of profiles observed in sections. Results are reported typically in terms of mean caliper diameter or mean volume of the particle.

METHODS

We have investigated the use of the Cavalieri estimator for obtaining estimates of mean particle volume using a Monte Carlo simulation. Samples of spherical and ellipsoidal particles were generated by computer and serially sectioned at a fixed mean thickness with a small, imposed random variation. The area of each profile was determined and the volume of the particle was calculated according to the Cavalieri estimator. The influence on the estimate of the mean particle volume and its 95% confidence interval was evaluated for several variables: the shape of the particles, the standard deviation of the particle volume in the population, the section thickness, and the standard deviation of the section thickness.

RESULTS

The results obtained with the Cavalieri estimator correspond favorably with those obtained with previously reported alternative methods. This leads to a recommendation for the strong consideration for the use of the Cavalieri estimator in cases in which it is technically feasible to obtain at least three sections through the individual particles. Graphs are provided, which relate the confidence interval for the mean volume to the number of particles measured.

摘要

背景

一个常见的形态测量问题是,根据在切片中观察到的轮廓样本所做的测量,来确定生物颗粒大小的估计值。结果通常以颗粒的平均卡尺直径或平均体积来报告。

方法

我们使用蒙特卡罗模拟研究了使用卡瓦列里估计量来获得平均颗粒体积估计值的方法。通过计算机生成球形和椭球形颗粒的样本,并以固定的平均厚度进行连续切片,同时施加一个小的随机变化。确定每个轮廓的面积,并根据卡瓦列里估计量计算颗粒的体积。评估了几个变量对平均颗粒体积估计值及其95%置信区间的影响:颗粒的形状、总体中颗粒体积的标准差、切片厚度以及切片厚度的标准差。

结果

用卡瓦列里估计量获得的结果与先前报道的其他方法获得的结果吻合良好。这导致建议,在技术上可行对单个颗粒至少获取三个切片的情况下,强烈考虑使用卡瓦列里估计量。提供了图表,显示了平均体积的置信区间与测量颗粒数量之间的关系。

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